volume 11 issue 7 pages 1451-1464

Synthesis and pharmacological evaluation of substituted naphth[1,2,3- de ]isoquinolines (dinapsoline analogues) as D 1 and D 2 dopamine receptor ligands

Publication typeJournal Article
Publication date2003-04-23
scimago Q2
wos Q1
SJR0.608
CiteScore6.7
Impact factor3.0
ISSN09680896, 14643391
Organic Chemistry
Drug Discovery
Biochemistry
Molecular Biology
Pharmaceutical Science
Clinical Biochemistry
Molecular Medicine
Abstract
Dinapsoline ((2); (+/-)-dihydroxy-2,3,7,11b-tetrahydro-1H-naphth[1,2,3-de]isoquinoline) is a full D(1) dopamine agonist that also has significant D(2) receptor affinity. Based on a similar pharmacophore, dinapsoline has pharmacological similarities to dihydrexidine ((1); (+/-)-trans-10,11-dihydroxy-5,6,6a,7,8,12b-hexahydrobenzo[a]phenanthridine), the first high affinity full D(1) agonist. Small alkyl substitutions on the dihydrexidine backbone are known to alter markedly the D(1):D(2) selectivity of dihydrexidine, and it was of interest to determine whether similar SAR exists within the dinapsoline series. This report describes the synthesis and pharmacological evaluation of six analogues of dinapsoline: N-allyl-(3);N-n-propyl- (4); 6-methyl- (5); 4-methyl- (6); 4-methyl-N-allyl- (7); and 4-methyl-N-n-propyl-dinapsoline (8). As expected from earlier studies with the dihydrexidine backbone, N-allyl (3) or N-n-propyl (4) analogues had markedly decreased D(1) affinity. Unexpectedly, and unlike the dihydrexidine series, these same substituents did not markedly increase D(2) affinity. The addition of a methyl group to position 6 (5) increased D(1):D(2) selectivity, but less markedly than did the analogous 2-methyl substituent added to 1. Unlike the analogous 4-methyl substituent of 1, the addition of a 4-methyl-group (6) actually decreased D(1) affinity without affecting D(2) affinity. These data demonstrate that the dinapsoline (2) backbone can be modified to produce dopamine agonists with novel properties. Moreover, as rigid ligands in which small substituents can cause significant changes in selectivity, they are important tools for deriving 'differential' SARs of the dopamine receptor isoforms.
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Qandil A. et al. Synthesis and pharmacological evaluation of substituted naphth[1,2,3- de ]isoquinolines (dinapsoline analogues) as D 1 and D 2 dopamine receptor ligands // Bioorganic and Medicinal Chemistry. 2003. Vol. 11. No. 7. pp. 1451-1464.
GOST all authors (up to 50) Copy
Qandil A., Lewis M., Jassen A., Leonard S. L., Mailman R. B., Nichols D. E. Synthesis and pharmacological evaluation of substituted naphth[1,2,3- de ]isoquinolines (dinapsoline analogues) as D 1 and D 2 dopamine receptor ligands // Bioorganic and Medicinal Chemistry. 2003. Vol. 11. No. 7. pp. 1451-1464.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1016/S0968-0896(02)00561-8
UR - https://doi.org/10.1016/S0968-0896(02)00561-8
TI - Synthesis and pharmacological evaluation of substituted naphth[1,2,3- de ]isoquinolines (dinapsoline analogues) as D 1 and D 2 dopamine receptor ligands
T2 - Bioorganic and Medicinal Chemistry
AU - Qandil, Amjad
AU - Lewis, M.
AU - Jassen, Amy
AU - Leonard, Sarah L.
AU - Mailman, R. B.
AU - Nichols, David E.
PY - 2003
DA - 2003/04/23
PB - Elsevier
SP - 1451-1464
IS - 7
VL - 11
PMID - 12628671
SN - 0968-0896
SN - 1464-3391
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2003_Qandil,
author = {Amjad Qandil and M. Lewis and Amy Jassen and Sarah L. Leonard and R. B. Mailman and David E. Nichols},
title = {Synthesis and pharmacological evaluation of substituted naphth[1,2,3- de ]isoquinolines (dinapsoline analogues) as D 1 and D 2 dopamine receptor ligands},
journal = {Bioorganic and Medicinal Chemistry},
year = {2003},
volume = {11},
publisher = {Elsevier},
month = {apr},
url = {https://doi.org/10.1016/S0968-0896(02)00561-8},
number = {7},
pages = {1451--1464},
doi = {10.1016/S0968-0896(02)00561-8}
}
MLA
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MLA Copy
Qandil, Amjad, et al. “Synthesis and pharmacological evaluation of substituted naphth[1,2,3- de ]isoquinolines (dinapsoline analogues) as D 1 and D 2 dopamine receptor ligands.” Bioorganic and Medicinal Chemistry, vol. 11, no. 7, Apr. 2003, pp. 1451-1464. https://doi.org/10.1016/S0968-0896(02)00561-8.